An efficient and practical 1,3‐dipolar [3+2] cycloaddition of N‐2,2,2‐trifluoroethylisatin ketimines and maleimides has been achieved through phase‐transfer catalytic process by using the cheap quaternary ammonium salt as a catalyst. The strat...
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https://www.riss.kr/link?id=O105635372
2021년
-
1434-193X
1099-0690
SCI;SCIE;SCOPUS
학술저널
788-793 [※수록면이 p5 이하이면, Review, Columns, Editor's Note, Abstract 등일 경우가 있습니다.]
0
상세조회0
다운로드다국어 초록 (Multilingual Abstract)
An efficient and practical 1,3‐dipolar [3+2] cycloaddition of N‐2,2,2‐trifluoroethylisatin ketimines and maleimides has been achieved through phase‐transfer catalytic process by using the cheap quaternary ammonium salt as a catalyst. The strat...
An efficient and practical 1,3‐dipolar [3+2] cycloaddition of N‐2,2,2‐trifluoroethylisatin ketimines and maleimides has been achieved through phase‐transfer catalytic process by using the cheap quaternary ammonium salt as a catalyst. The strategy grants rapid generation of various complex trifluoromethyl spiro‐fused[succinimide‐pyrrolidine‐oxindole]s in good yields and with excellent diastereoselectivities. The preparative‐scale reaction in conjunction with the optimized Suzuki–Miyaura cross‐coupling derivatizations of the product give prominence to application prospect of this methodology. The investigation on the reaction mechanism implies that the real catalyst in the cycloaddition might be tetrahexylammonium carbonate.
A phase‐transfer catalytic 1,3‐dipolar [3+2] cycloaddition grants rapid generation of various trifluoromethyl spiro‐fused[succinimide‐pyrrolidine‐oxindole]s that might be of great utility for drug discovery. The gram‐scale reaction in conjunction with the derivatizations of the product demonstrate the synthetic potential of this methodology. The reaction mechanism is also discussed.
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